Vapor Pressure Measurement of Two Quaternary Systems LiBr + LiNO3 + LiCl + H2O and LiBr + LiCl + 1,3-Propanediol + H2O
作者:Xi Zhuo Jiang, Wenjie Xiong, Yun Li, Danxing Zheng, Xiao Wang, Lin Shi · 发表于:Journal of Chemical & Engineering Data · 年份:2014 · DOI:10.1021/je5000023 · 被引用次数:10 · 研究领域:Adsorption and Cooling Systems、Thermal Expansion and Ionic Conductivity、Advanced Battery Materials and Technologies
This research introduced two new absorption working pairs which have better energy storage performance than LiBr + H 2 O and lower cost than other working pairs in literature. The two working pairs are both quaternary systems: LiBr + LiNO 3 + LiCl + H 2 O and LiBr + LiCl + 1,3-propanediol + H 2 O. Vapor pressures of the two quaternary systems were measured with the boiling point method at temperatures from (318.07 to 443.02) K and (324.78 to 419.40) K, respectively, with the both mass fractions of absorbent species from 0.40 to 0.65. The experimental data agree well with the calculated data from the Antoine-type equation. Compared with traditional working fluids of absorption cycle and ionic liquids, results show that the two quaternary systems studied in this work have lower vapor pressures, which will benefit energy release process in absorption energy storage/release systems.